Field test platform convenient for consignment
The design of lifting support legs and telescopic mechanism solves the problem of low mobility of field test platforms, enabling quick loading and unloading onto trailers and enhancing the platform's adaptability and stability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-28
- Publication Date
- 2026-04-03
AI Technical Summary
Existing field testing platforms have low mobility and are difficult to load and unload onto trailers quickly and easily.
Employing lifting support legs and a telescopic mechanism, the lifting support legs can be extended and retracted, and the connecting column can be adjusted, forming a trailer accommodating slot to accommodate trailers of different heights, through the combination of the support components and the housing body.
It improves the mobility of the field testing platform, enhances its adaptability to trailers of different heights, and improves the platform's stability and service life during loading and unloading.
Smart Images

Figure CN224079885U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of field testing platform technology, specifically to a field testing platform that is easy to transport. Background Technology
[0002] A field testing platform is a platform for analyzing and testing soil and water samples in the field.
[0003] Most existing field testing platforms are one-piece structures, which have low mobility. Utility Model Content
[0004] The purpose of this invention is to provide a field testing platform that is easy to transport, thus solving the problem of low mobility of existing field testing platforms.
[0005] To solve the above-mentioned technical problems, the present invention adopts the following technical solution:
[0006] A field testing platform for easy transport includes a housing and supporting components. The lower surface of the housing is designed to fit onto a trailer. A plurality of supporting components are provided, distributed at both ends of the housing. Each supporting component includes a lifting support leg disposed on the lower surface of the housing, forming a trailer receiving groove between the lifting support leg and the lower surface of the housing. The lifting support leg extends and retracts along the upper surface of the housing towards the lower surface to adjust the depth of the trailer receiving groove.
[0007] A further technical solution is that the support member includes two lifting support legs, and the two lifting support legs are arranged along one side of the room to the other side of the room.
[0008] A further technical solution is: a first storage groove is provided on the lower surface of the room body; the first storage groove extends from the lower surface of the room body to the upper surface of the room body; the lifting support leg is disposed in the first storage groove, and the lifting support leg can be stored in the first storage groove.
[0009] A further technical solution is as follows: the support component further includes a connecting column and a telescopic mechanism; the lower surface of the connecting column is provided with the first storage groove; two connecting columns are provided, which are arranged along one side of the room body towards the other side of the room body, and the two connecting columns are correspondingly connected to two lifting support legs; the telescopic mechanism is provided in the room body, and the telescopic mechanism is connected to at least one of the connecting columns; wherein, the telescopic mechanism is used to drive the two connecting columns to move closer to or further away from each other along one side of the room body towards the other side of the room body.
[0010] A further technical solution is: the telescopic mechanism includes telescopic units; the number of telescopic units is set to two, the two telescopic units are respectively set on both sides of the room body, and the two telescopic units are correspondingly connected to the two connecting columns.
[0011] A further technical solution is that a second storage slot is provided on both sides of any end of the housing; the telescopic unit is disposed on the wall of the storage slot, and the telescopic unit is used to store the connecting column in the second storage slot.
[0012] A further technical solution is that the field testing platform also includes a protective pad; the protective pad is disposed on the wall of the second storage slot; one end of the protective pad away from the wall of the second storage slot is used to fit against the connecting column.
[0013] A further technical solution is that the protective pad is fitted onto the telescopic unit.
[0014] Compared with the prior art, the beneficial effects of this utility model are:
[0015] The aim is to enable the field test platform to be quickly and easily loaded and unloaded onto trailers, thereby improving its mobility. Simultaneously, adjusting the length of the lifting support legs allows for adaptation to trailers of varying heights, further enhancing the field test platform's adaptability to trailers of different heights. Attached Figure Description
[0016] Figure 1 This is a top view of the field test platform in this embodiment, where the connecting column is stored in the second storage slot for easy transport.
[0017] Figure 2 This is a top view of the field test platform in this embodiment when the connecting column for the field test platform, which is designed for easy transport, is not stored in the second storage slot.
[0018] Figure 3 This is a front view of the field test platform in this embodiment when the lifting support leg for the field test platform, which is designed for easy transport, is not stored in the first storage slot.
[0019] Figure 4 This is a front view of the field test platform in this embodiment, where the lifting support legs are stored in the first storage slot, making it easy to transport.
[0020] The attached diagram shows the markings and corresponding component names:
[0021] 1-House body; 2-Lifting support leg; 3-Connecting column; 4-Telescopic mechanism; 5-Trailer accommodating slot; 6-First storage slot; 7-Second storage slot; 8-Protective pad. Detailed Implementation
[0022] The present invention will be further described below with reference to the accompanying drawings.
[0023] Example 1
[0024] This embodiment provides a field testing platform that is easy to transport, such as... Figures 1-4 As shown, the device includes a housing 1 and supporting members. The lower surface of the housing 1 is used to fit onto a trailer. Several supporting members are provided, distributed at both ends of the housing 1. Each supporting member includes a lifting support leg 2, which is disposed on the lower surface of the housing 1, and forms a trailer receiving groove 5 between the lifting support leg 2 and the lower surface of the housing 1. The lifting support leg 2 extends and retracts along the upper surface of the housing 1 toward the lower surface of the housing 1 to adjust the depth of the trailer receiving groove 5.
[0025] For example, during implementation, the support components are connected to the housing 1 by welding, screwing, or other methods. Several support components are provided, each positioned at one end of the housing 1. Each support component includes lifting support legs 2, which are installed at both ends of the lower surface of the housing 1, forming a trailer receiving groove 5 between the lifting legs at both ends of the lower surface of the housing 1. The lifting support legs 2 can be a telescopic mechanism 4 driven by a cylinder, hydraulic cylinder, or other structure, or a structure with built-in telescopic function. For example, the cylinder, hydraulic cylinder, etc., are first connected to the housing 1 by welding, screwing, or snap-fitting, with the piston rods of the cylinder, hydraulic cylinder, etc., facing the lower surface of the housing 1, and able to extend and retract from the upper surface of the housing 1 towards the lower surface. Next, the lifting support legs 2 are connected to the piston rods of the cylinder, hydraulic cylinder, etc., by couplings, welding, screwing, or other methods. This ensures that the lifting support leg 2 can extend and retract along the upper surface of the housing 1 towards the lower surface of the housing 1.
[0026] During use, when the field test platform placed on the ground is moved.
[0027] During the loading phase, the lifting support legs 2 are extended from the upper surface to the lower surface of the housing 1, raising the housing 1 and increasing the depth of the trailer receiving slot 5. Once the depth of the trailer receiving slot 5 exceeds the height of the trailer, the trailer is driven from one side of the housing 1 to the other, directly beneath the housing 1. Next, the lifting support legs 2 are retracted from the lower surface to the upper surface of the housing 1, lowering the housing 1 until its lower surface is flush with the trailer. At this point, the lifting support legs 2 are continued to retract from the lower surface to the upper surface of the housing 1 to separate the lower ends of the support legs from the ground. Finally, the field test platform is transported to the target area using the trailer.
[0028] During the unloading phase, the lifting support leg 2 is extended from the upper surface of the housing 1 to the lower surface of the housing 1, with the lower end of the lifting support leg 2 first touching the ground. Then, the housing 1 rises to increase the depth of the trailer receiving slot 5. Once the depth of the trailer receiving slot 5 exceeds the height of the trailer, the trailer is driven away from directly beneath the housing 1 along the other side of the housing 1. Next, the lifting support leg 2 is retracted from the lower surface of the housing 1 to the upper surface of the housing 1, lowering the housing 1 until it reaches a suitable height. This aims to quickly and easily load and unload the field test platform onto the trailer, thereby improving the mobility of the field test platform. Simultaneously, adjusting the length of the lifting support leg 2 can accommodate trailers of different heights, aiming to enhance the adaptability of the field test platform to trailers of varying heights.
[0029] Example 2
[0030] Based on the above embodiment 1, in this embodiment, as follows: Figure 1 As shown, the support includes two lifting support legs 2, and the two lifting support legs 2 are arranged along one side of the room body 1 towards the other side of the room body 1.
[0031] For example, in implementation, each support member includes two lifting support legs 2, which are evenly distributed along one side of the housing 1 towards the other. That is, at least one support member is provided at each end of the housing 1, and the two lifting support legs 2 in each support member are evenly distributed on the lower surface of the housing 1 along one side of the housing 1 towards the other. By rationally arranging the positions of the lifting support legs 2, it is hoped that the field test platform can be made more stable during loading and unloading, thereby reducing the risk of tilting or instability caused by single-point support.
[0032] Example 3
[0033] Based on the above embodiment 2, in this embodiment, as follows: Figure 3 or Figure 4As shown, a first storage groove 6 is provided on the lower surface of the room body 1; the first storage groove 6 extends from the lower surface of the room body 1 to the upper surface of the room body 1; the lifting support leg 2 is disposed in the first storage groove 6, and the lifting support leg 2 can be stored in the first storage groove 6.
[0034] For example, in the implementation process, a first storage groove 6 is provided on the lower surface of the housing 1. The first storage groove 6 extends from the lower surface of the housing 1 to the upper surface. The lifting support leg 2 is installed in the first storage groove 6, and after the lifting support leg 2 retracts from the lower surface of the housing 1 to the upper surface of the housing 1, it can be completely stored in the first storage groove 6. On the one hand, when the lifting support leg 2 is not needed (for example, when the field test platform has been stably placed or is in the process of transportation), storing the lifting support leg 2 in the first storage groove 6 is expected to reduce the risk of damage to the lifting support leg 2 due to collision, thereby extending the service life of the field test platform. On the other hand, when the target area has low flatness, the lifting support leg 2 can be supported in the target area to improve the stability of the field test platform after placement.
[0035] Example 4
[0036] Based on the above embodiment 3, in this embodiment, as follows: Figure 3 or Figure 4 As shown, the support also includes a connecting column 3 and a telescopic mechanism 4; the lower surface of the connecting column 3 is provided with the first storage groove 6; there are two connecting columns 3, which are arranged along one side of the room body 1 towards the other side of the room body 1, and the two connecting columns 3 are correspondingly connected to two lifting support legs 2; the telescopic mechanism 4 is provided on the room body 1, and the telescopic mechanism 4 is connected to at least one of the connecting columns 3; wherein, the telescopic mechanism 4 is used to drive the two connecting columns 3 to move closer or further away from each other along one side of the room body 1 towards the other side of the room body 1.
[0037] For example, in implementation, the aforementioned support also includes a connecting column 3 and a telescopic mechanism 4. A first storage groove 6 is formed on the lower surface of the connecting column 3, extending from the lower surface to the upper surface of the connecting column 3. Two connecting columns 3 are provided, and these two columns are evenly distributed along one side of the room body 1 towards the other. The two lifting support legs 2 are respectively connected to the first storage grooves 6 on the two connecting columns 3.
[0038] The telescopic mechanism 4 can be a pneumatic cylinder, hydraulic cylinder, or other telescopic mechanism 4. The telescopic mechanism 4 is connected to the housing 1 by means of welding, screwing, or snap-fit, and is connected to at least one connecting column 3 by means of welding, screwing, or other means.
[0039] During use, when the field test platform placed on the ground is moved.
[0040] During the loading phase, firstly, the lifting support legs 2 extend from the upper surface of the housing 1 towards the lower surface, raising the housing 1 and increasing the depth of the trailer receiving slot 5. Once the depth of the trailer receiving slot 5 exceeds the height of the trailer, the trailer is driven from one side of the housing 1 to the other, directly beneath the housing 1. Next, the lifting support legs 2 retract from the lower surface of the housing 1 towards the upper surface, lowering the housing 1 until its lower surface is flush with the trailer. Then, the lifting support legs 2 continue to retract from the lower surface of the housing 1 towards the upper surface to separate the lower ends of the support legs from the ground. Next, the telescopic mechanism 4 is activated to move the two connecting columns 3 closer together from one side of the housing 1 to the other. Finally, the trailer is used to transport the field test platform to the target area.
[0041] During the unloading phase, the telescopic mechanism 4 is first operated to drive the two connecting columns 3 away from each other along one side of the housing 1, thereby increasing the distance between the two lifting support legs 2. Next, the lifting support legs 2 are extended from the upper surface to the lower surface of the housing 1, with the lower end of the lifting support legs 2 first touching the ground. Then, the housing 1 rises, increasing the depth of the trailer receiving slot 5. When the depth of the trailer receiving slot 5 exceeds the height of the trailer, the trailer is driven away from directly beneath the housing 1 along the other side of the housing 1. Then, the lifting support legs 2 are retracted from the lower surface to the upper surface of the housing 1, lowering the housing 1 until it reaches a suitable height. On one hand, increasing the distance between the two lifting support legs 2 aims to increase the stability of the field testing platform after the lifting support legs 2 are supported on the ground. On the other hand, adjusting the distance between the two lifting support legs 2 aims to allow the housing 1 to be supported within target areas of different sizes using the lifting support legs 2.
[0042] Example 5
[0043] Based on the above embodiment 4, in this embodiment, as follows: Figure 2 As shown, the telescopic mechanism 4 includes telescopic units; there are two telescopic units, which are respectively located on both sides of the housing 1, and the two telescopic units are correspondingly connected to two connecting columns 3.
[0044] For example, in implementation, the aforementioned telescopic mechanism 4 includes telescopic units, which can be cylinders, hydraulic cylinders, or other telescopic mechanisms 4. These telescopic units are installed on the housing 1 by welding, screwing, or other methods. The number of telescopic units is set such that two telescopic units are symmetrically distributed on both sides of the housing 1, and each telescopic unit is connected to a connecting column 3 by welding, screwing, or other methods. By operating the two telescopic units individually or simultaneously, the distance between the two connecting columns 3 (and the corresponding lifting support legs 2) can be precisely adjusted. On the one hand, in certain target areas of specific dimensions, the distance between the two lifting support legs 2 can be fine-tuned to meet the placement requirements of the field testing platform. On the other hand, if the ground on one side is uneven, the imbalance can be compensated by adjusting the telescopic unit on the corresponding side individually. This aims to improve the balance and stability of the field testing platform under different ground conditions.
[0045] Example 6
[0046] Based on the above embodiment 5, in this embodiment, as follows: Figure 1 Combination Figure 2 As shown, a second storage slot 7 is provided on both sides of any end of the housing 1; the telescopic unit is provided on the wall of the storage slot, and the telescopic unit is used to store the connecting column 3 in the second storage slot 7.
[0047] For example, during implementation, a second storage slot 7 is provided on both sides of either end of the housing 1, and two telescopic units are respectively installed on the slot wall of the second storage slot 7.
[0048] During use, when the lifting support leg 2 is needed, first extend the connecting column 3 from the second storage slot 7 using the telescopic unit and adjust it to a suitable position, then extend the lifting support leg 2 from the first storage slot 6 on the connecting column 3. When the lifting support leg 2 is not in use, first retract the lifting support leg 2 into the first storage slot 6 on the connecting column 3, then retract the connecting column 3 into the second storage slot 7 using the telescopic unit. This aims to reduce the risk of damage to the connecting column 3 due to external collisions or other factors during transportation or when the lifting support leg 2 is partially not in use, thereby extending the service life of the connecting column 3.
[0049] Example 7
[0050] Based on the above embodiment 6, in this embodiment, as follows: Figure 2 As shown, the field testing platform also includes a protective pad 8; the protective pad 8 is disposed on the wall of the second storage slot 7; one end of the protective pad 8 away from the wall of the second storage slot 7 is used to fit against the connecting column 3.
[0051] For example, during implementation, a protective pad 8 is connected to the wall of the second storage slot 7 by means of screwing, bonding, or other methods. This protective pad 8 can be made of wear-resistant and impact-resistant materials such as rubber or polyurethane. When the connecting column 3 is housed in the second storage slot 7, the connecting column 3 and the protective pad 8 are attached to the side away from the storage slot wall. This aims to reduce the risk of direct contact, collision, and friction between the connecting column 3 and the wall of the second storage slot 7 due to vibration during transportation, thereby reducing the probability of damage to the connecting column 3 and the housing 1, and ultimately improving the service life of the field testing platform.
[0052] Preferably, a movement gap is reserved between the connecting column 3 and the bottom of the second storage slot 7, in order to reduce the risk of direct contact, collision and friction between the connecting column 3 and the bottom of the second storage slot 7 due to vibration during transportation, thereby reducing the probability of damage to the connecting column 3 and the housing 1 and improving the service life of the field test platform.
[0053] Example 8
[0054] Based on the above embodiment 7, in this embodiment, as follows: Figure 2 As shown, the protective pad 8 is fitted onto the telescopic unit.
[0055] For example, during implementation, the protective pad 8 has a ring structure, and the protective sleeve is fitted onto the telescopic unit. This is intended to reduce the risk of the protective pad 8 falling off.
[0056] Although the present invention has been described herein with reference to several illustrative embodiments, it should be understood that many other modifications and implementations can be devised by those skilled in the art, which will fall within the scope and spirit of the principles disclosed herein. More specifically, various variations and modifications can be made to the components and / or layout of the subject matter combination within the scope of the disclosure, drawings, and claims. Besides variations and modifications to the components and / or layout, other uses will be apparent to those skilled in the art.
Claims
1. A field testing platform that is easy to transport, characterized in that, include: The housing (1) has a lower surface for attaching to the trailer; The support members are provided in a plurality of units, which are distributed at both ends of the housing (1); the support members include lifting support legs (2), which are provided on the lower surface of the housing (1), and a trailer receiving groove (5) is formed between the lifting support legs (2) and the lower surface of the housing (1). The lifting support leg (2) extends and retracts along the upper surface of the housing (1) toward the lower surface of the housing (1) to adjust the depth of the trailer receiving slot (5).
2. The field testing platform according to claim 1, characterized in that: The support includes two lifting support legs (2), and the two lifting support legs (2) are arranged along one side of the room body (1) towards the other side of the room body (1).
3. The field testing platform according to claim 2, characterized in that: The lower surface of the room body (1) is provided with a first storage groove (6); The first storage slot (6) extends from the lower surface of the room body (1) toward the upper surface of the room body (1); The lifting support leg (2) is disposed in the first storage slot (6), and the lifting support leg (2) can be stored in the first storage slot (6).
4. The field testing platform according to claim 3, characterized in that: The support also includes a connecting column (3) and a telescopic mechanism (4); The lower surface of the connecting column (3) is provided with the first storage groove (6); The number of connecting columns (3) is set to two. The two connecting columns (3) are arranged along one side of the room body (1) towards the other side of the room body (1), and the two connecting columns (3) are connected to the two lifting support legs (2) respectively. The telescopic mechanism (4) is disposed on the room body (1), and the telescopic mechanism (4) is connected to at least one of the connecting columns (3); The telescopic mechanism (4) is used to drive the two connecting columns (3) to move closer to or further away from each other along one side of the room (1) towards the other side of the room (1).
5. The field testing platform according to claim 4, characterized in that: The telescopic mechanism (4) includes a telescopic unit; The telescopic unit is provided in two parts, and the two telescopic units are respectively located on both sides of the room body (1), and the two telescopic units are respectively connected to the two connecting columns (3).
6. The field testing platform according to claim 5, characterized in that: The room body (1) has a second storage slot (7) on both sides of each end; The telescopic unit is disposed on the wall of the storage slot, and the telescopic unit is used to store the connecting column (3) in the second storage slot (7).
7. The field testing platform according to claim 6, characterized in that: It also includes a protective pad (8); The protective pad (8) is disposed on the wall of the second storage groove (7); The end of the protective pad (8) away from the wall of the second storage groove (7) is used to fit against the connecting column (3).
8. The field testing platform according to claim 7, characterized in that: The protective pad (8) is fitted onto the telescopic unit.